Repository logo
 

3D nanoscale reconstruction of human airway multiciliogenesis reveals cellular architecture remodeling and cilia-mitochondria link via rootlets.

Published version
Peer-reviewed

Repository DOI


Loading...
Thumbnail Image

Change log

Abstract

A central challenge in single-cell biology is understanding how molecular programs drive changes in cellular architecture that enable specialized function. A striking example of cellular remodeling is the differentiation of airway stem cells into the respiratory multiciliated epithelium, a protective tissue barrier that clears inhaled pathogens and particulate matter. Here, we present its first three-dimensional nanometer-scale reconstruction, revealing coordinated changes in cellular organization, organelle topology, and inter-organelle contacts during multiciliogenesis. We uncover a structural and functional association between motile cilia and mitochondria mediated by rootlets, striated cytoskeletal fibers that remain poorly characterized in human airway multiciliated cells. Rootlets connect to basal bodies through a multiprotein linker containing the uncharacterized rootletin/CROCC homolog CROCC2, oscillate at frequencies comparable to ciliary beating, promote basal body alignment, and when lost, reduce maximal mitochondrial respiratory capacity. Altogether, this work integrates structural, dynamic, and functional analyses to elucidate mechanisms underlying airway mucociliary defense.

Description

Journal Title

Cell Rep

Conference Name

Journal ISSN

2639-1856
2211-1247

Volume Title

45

Publisher

Elsevier

Rights and licensing

Except where otherwised noted, this item's license is described as Attribution 4.0 International
Sponsorship
Carson Leslie Foundation
Biotechnology and Biological Sciences Research Council
Evelyn Trust
Queen Mary University of London
Radiation Oncology Institute
Howard Hughes Medical Institute
Medical Research Council
Novo Nordisk Foundation
National Cancer Center
National Cancer Institute